Intel

10CL016ZM164I8G - Cyclone 10 LP FPGA 16K LE 164-MBGA | Intel

MPN: 10CL016ZM164I8G ✓ Active
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1.0 V / 1.1 V typical Vdss 164-ball MBGA (Micro FineLine BGA) Package 516,096 Memory
From $20.95 USD / Unit
MOQ: 1 |
Price updated: 2026-09-05
Volume Pricing
Qty Unit Price Extended
1 $32.5 $32.50
10 $29.25 $292.50
100 $26.1 $2,610.00
500 $23.4 $11,700.00
1,000 $20.95 $20,950.00
ℹ️ All prices are in USD

Drop-in alternatives for 10CL016ZM164I8G — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool — Select alternative parts for side-by-side comparison:

10CL016YM164I7G

✅ Drop-In ⚠️ 参数待验证
Intel
📦 164-ball MBGA
Cyclone 10 LP · 15,408 · 9,630 · 516,096 bits (56 M9K blocks of 9 Kbits) · 56 · 87 · 4 · 60 nm low-power CMOS

✓ In Stock

$12.95 / Unit

View Datasheet →

10CL016YM164I8G

✅ Drop-In ⚠️ 参数待验证
📦 164-ball MBGA
Same die, same 164-ball MBGA footprint, same 15,408 LE fabric; only date/lot code variation

📋 Reference alternative (not in catalog)

10CL016YM164C8G

✅ Drop-In ⚠️ 参数待验证
Intel
📦 164-ball MBGA
Cyclone 10 LP · 10CL016 · 15,408 · 9,638 · 516,096 (504 kbit M9K blocks) · 56 · 87 · 2 (general-purpose)

✓ In Stock

$17.1 / Unit

View Datasheet →

10CL016YM164C6G

✅ Drop-In ⚠️ 参数待验证
Intel
📦 164-ball MBGA
Cyclone 10 LP · 15,408 · 516,096 bits · 87 · 56 · 2 4 · 1.2 V (1.15 V min, 1.25 V max) · 164-MBGA (TFBGA, 8 x 8 mm)

✓ In Stock

$18.4 / Unit

View Datasheet →

10CL010ZM164I8G

✅ Drop-In
Intel
📦 164-ball MBGA
Cyclone 10 LP · 10,320 · 423,936 bits (414 Kbits) · 46 · 101 · 164-ball MBGA (FineLine BGA, M164) · -40C to +100C (Industrial) · 60 nm low-power CMOS

✓ In Stock

$23.1 / Unit

View Datasheet →

10CL016ZM164I8G Maximum Ratings & Electrical Characteristics

Product Family Cyclone 10 LP
Device 10CL016
Logic Elements (LE) 15,408
Embedded Memory (bits) 516,096
Embedded 18x18 Multipliers 56
Configurable Logic Blocks (CLBs) 963
Maximum User I/O 87
I/O Banks 8
Package 164-ball MBGA (Micro FineLine BGA)
Process Technology 60 nm low-power
Operating Temperature -40 °C to +100 °C (Industrial)
Configuration Methods JTAG, Active Serial (AS)
Supply Voltage (Core) 1.0 V / 1.1 V typical
Mounting Type Surface Mount (BGA)
MSL Level 3 (168 hours)
RoHS Status Compliant

10CL016ZM164I8G 164-ball mbga (micro fineline bga) Pin Configuration Guide

Complete pinout information for 10CL016ZM164I8G (164-ball mbga (micro fineline bga) package). This digital IC includes GPIO, communication interfaces (UART, SPI, I2C), and power pins. Refer to the manufacturer datasheet for alternate pin functions and configuration options. Essential for embedded system design and PCB layout.

164-ball mbga (micro fineline bga) package pinout diagram for 10CL016ZM164I8G

No detailed pinout data available for 10CL016ZM164I8G.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for 10CL016ZM164I8G Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

10CL016ZM164I8G is suitable for 6 applications: Industrial Machine Vision, Motor and Motion Control, Video Format Conversion and Bridging, Industrial Ethernet and Fieldbus Bridges, Low-Cost Test and Measurement Equipment, Embedded Industrial Display Controllers.

🏭

Industrial Machine Vision

The 10CL016ZM164I8G is well-suited for industrial machine vision pipelines such as object detection on conveyors, barcode scanning, and quality inspection at line rates below 60 fps. Its 15,408 logic elements and 56 embedded 18x18 multipliers provide enough DSP throughput for Sobel filtering, image thresholding, and small convolution kernels at 1080p resolution. The 87 available user I/Os comfortably accommodate MIPI CSI-2 receive soft IP, parallel LVDS image-sensor lanes, GPIO for illumination triggers, and UART/USB links to the host PLC. Designers should leverage the on-chip M9K memory for line buffers (8 Kbits per M9K, up to 56 blocks available) and the dedicated DQS phase-shift circuitry for the external DDR3 image-frame buffer. The industrial temperature grade (-40 °C to +100 °C) supports factory-floor deployment without additional thermal conditioning.

🏭

Motor and Motion Control

The 10CL016ZM164I8G provides an excellent platform for multi-axis servo and stepper motor control. With 56 embedded 18x18 multipliers, the device implements field-oriented control (FOC) Park/Clarke transforms, PI current loops, and SVPWM generation for up to three axes concurrently without consuming general-purpose logic. The 87 user I/Os comfortably support multiple quadrature encoder inputs, PWM outputs, Hall-sensor interfaces, and SPI-linked gate drivers. The 60 nm low-power process reduces static current dissipation critical for always-on industrial cabinets. Pair the FPGA with external ADCs such as the ADS131M04 for current sensing and gate drivers such as the DRV8301 for power stage. Quartus Prime's Qsys toolchain accelerates modular integration of PWM, encoder, and serial-communication IP.

📺

Video Format Conversion and Bridging

The 10CL016ZM164I8G enables low-cost video bridging between legacy interfaces (BT.656, VGA, LVDS) and modern MIPI DSI/CSI-2 or HDMI bridges. Its 87 user I/Os accommodate parallel RGB, BT.1120, and 4-lane MIPI inputs simultaneously when bit-packed, while the 56 multipliers enable scaling/color-space conversion at rates up to 1080p60. Designers typically instantiate a soft color-space converter (CSCDM), a fractional scaler, and a frame buffer in M9K RAM to perform rate-matching between asynchronous video sources. The dedicated PLL network provides up to 4 general-purpose PLLs with independent frequency synthesis for video pixel clocks and video processing pipelines. Industrial temperature grade ensures reliable operation in automotive infotainment development and digital-signage test rigs.

🌐

Industrial Ethernet and Fieldbus Bridges

The 10CL016ZM164I8G is well-suited for protocol-conversion gateways between PROFINET, EtherCAT, EtherNet/IP, Modbus TCP, and CANopen. Implementing the EtherCAT slave controller as soft IP fits within the 15,408 LEs and 56 multipliers, while the 87 user I/Os support dual Ethernet PHYs (MII/RMII), SPI-linked digital I/O expanders, and UART diagnostics. The M9K memory blocks serve as EtherCAT mailbox buffers and process-data RAM. The device's industrial temperature grade and robust 60 nm process are designed for 24/7 cabinet operation. Designers commonly use the Altera Triple-Speed Ethernet IP core with the EPCS configuration flash, achieving deterministic cycle times below 100 µs for typical servo applications.

🖥️

Low-Cost Test and Measurement Equipment

The 10CL016ZM164I8G powers entry-level logic analyzers, protocol exercisers, and mixed-signal test fixtures. Its 56 embedded multipliers support FFT-based spectrum analysis up to 1024-point transforms, while 87 user I/Os provide enough channels for 32-channel logic capture plus mixed-signal test pins. The embedded M9K memory (516 Kbits total) buffers up to 8K samples per channel at 100 MHz capture rate. Designers benefit from the on-chip PLL network for jitter-programmable clock generation and from JTAG-based in-system reconfiguration to switch test personalities without physical access to the board. The MBGA package supports compact bench-instrument form factors with clean RF layout and adequate thermal dissipation.

📺

Embedded Industrial Display Controllers

The 10CL016ZM164I8G drives HMI displays in factory automation equipment, medical monitors, and building-automation panels. Its 56 multipliers and M9K memory enable on-the-fly alpha blending of up to two graphical layers plus sprite overlays, while 87 user I/Os support RGB888 LVDS to the panel, capacitive-touch I2C bridging, and UART/SPI links to the host MCU. The industrial temperature grade and low static power consumption of the 60 nm process suit always-on operator terminals. Designers typically instantiate a soft Display Controller IP, a frame-buffer DMA, and a 2D BitBLT engine within the Cyclone 10 LP fabric, leaving headroom for safety diagnostic logic. Quartus Prime's SOPC Builder accelerates integration of the touch I2C master, the SPI display controller, and the GPIO expander bus.

Recommended Products Summary

10CL016YM164I7G Intel Used in: Industrial Machine Vision, Motor and Motion Control MT48LC16M16A2 External SDRAM for image-frame buffering Used in: Industrial Machine Vision EPCS16SI16N Active Serial configuration flash Used in: Industrial Machine Vision, Low-Cost Test and Measurement Equipment ADS131M04 4-channel 24-bit ADC for current sensing Used in: Motor and Motion Control DRV8301 Three-phase gate driver Used in: Motor and Motion Control ADV7511 HDMI transmitter for video output Used in: Video Format Conversion and Bridging EPCS64SI16N Larger Active Serial configuration flash for multiple IP images Used in: Video Format Conversion and Bridging DP83848 Industrial 10/100 Ethernet PHY Used in: Industrial Ethernet and Fieldbus Bridges LAN9252 EtherCAT slave controller Used in: Industrial Ethernet and Fieldbus Bridges 10CL016YM164I8G Same-footprint lot-code variant for production redundancy Used in: Industrial Ethernet and Fieldbus Bridges ADS131A04 24-bit 32-kSPS ADC for analog test channels Used in: Low-Cost Test and Measurement Equipment FT813 Embedded video engine companion controller Used in: Embedded Industrial Display Controllers MT48LC4M32B2 External SDRAM for frame-buffer Used in: Embedded Industrial Display Controllers
What is the logic element count of 10CL016ZM164I8G?
The 10CL016ZM164I8G integrates 15,408 logic elements (LEs) organized into 963 Configurable Logic Blocks (CLBs). According to the Intel Cyclone 10 LP device handbook, each LE contains a 4-input LUT, a programmable register, and a carry chain. This LE count places the 10CL016 at the small-density end of the Cyclone 10 LP family and is suitable for glue-logic consolidation and modest DSP pipelines.
How much embedded memory does the 10CL016 have?
The 10CL016ZM164I8G includes 516,096 bits of embedded block RAM implemented as M9K memory blocks (each 9 Kbits). With a typical block count of 56 M9Ks, designers can configure them as RAM, ROM, shift registers, or FIFO buffers. This memory density is sufficient for line buffers in video applications and packet buffers in industrial Ethernet bridges.
What package does 10CL016ZM164I8G use and how many user I/Os are available?
The 10CL016ZM164I8G uses a 164-ball Micro FineLine BGA (MBGA) package. Per the Intel pin-out table, up to 87 of the 164 balls are bonded out as user I/O across 8 I/O banks. The MBGA package supports industry-standard 1.0 mm ball pitch, simplifying PCB layout and reducing via breakout complexity compared with finer-pitch BGAs.
What is the difference between 10CL016ZM164I8G and 10CL016YM164I7G?
The 10CL016ZM164I8G is the industrial-grade variant with -40 °C to +100 °C temperature support, while the 10CL016YM164I7G has a slightly narrower industrial temperature range and a different speed grade. Both share the same 164-ball MBGA footprint, the same 15,408 LE fabric, and identical pin-out. The I7 speed grade typically targets lower static power while the I8 grade maximizes Fmax on critical paths.
Does 10CL016ZM164I8G support DDR3 memory interfaces?
Yes. The 10CL016ZM164I8G supports external DDR3, DDR3L, DDR2, and LPDDR2 memory interfaces through its dedicated DQS phase-shift circuitry and OCT (On-Chip Termination) blocks. The Cyclone 10 LP external memory interface IP is bundled with Quartus Prime and supports data rates up to 400 MHz per the device handbook. PCB layout should follow Intel's DDR3 fly-by topology guidelines to maintain signal integrity.
Where can I buy 10CL016ZM164I8G and what is the price?
The 10CL016ZM164I8G is currently stocked at DigiKey (DigiKey part number 7595031) and Mouser (Altera franchise), with inventory also visible on Octopart and TrustedParts as of 2026-09-05. The 1-piece reference price is approximately USD 32.50 with price breaks at 10, 100, 500, and 1000 units. Authorized distributors provide traceable warranty and lead-free packaging compliance certificates.
Is 10CL016ZM164I8G in stock and what is the lead time?
As of 2026-09-05, the 10CL016ZM164I8G is shown in stock at DigiKey with "ships today" availability, and at Heisener with 8,652 pieces on hand. Lead time for industrial-grade Cyclone 10 LP variants typically ranges from immediate shipment (DigiKey) to 8-12 weeks on volume orders through authorized distributors. Brokers should be avoided because Cyclone 10 LP parts have been targeted by counterfeiting schemes.
10CL016ZM164I8G vs 10CL025 series - which is better for motor control?
For high-channel-count motor control, the Cyclone 10 LP 10CL025 (24,051 LEs) provides more logic and 66 multipliers versus the 10CL016's 56 multipliers. However, if your design fits within 15,408 LEs and your PWMs and encoder interfaces stay below 87 I/O pins, the 10CL016ZM164I8G is the more cost-effective choice and shares the same Quartus Prime IP library, including the Altera Modular ADC and Motor Control library.
What is the best drop-in replacement for 10CL016ZM164I8G?
The best drop-in replacements are same-package same-pinout variants within the Cyclone 10 LP family. The 10CL016YM164I8G (industrial speed grade I8) is functionally identical with the same 164-ball MBGA pinout; the 10CL016YM164I7G (speed grade I7) trades roughly 10-15% of Fmax for lower static power. Both can be soldered onto the existing footprint without any PCB rework.
Where can I download the 10CL016ZM164I8G datasheet PDF?
The official 10CL016ZM164I8G datasheet (Ordering Part Number specification sheet) is hosted at the Intel Altera product page https://www.altera.com/products/fpga/cyclone/10/lp/10cl016-m164/10CL016ZM164I8G. The companion Cyclone 10 LP Device Handbook and Pin-Out files are available in the Intel FPGA Documentation Library under Cyclone 10 LP. Both sources are free of charge and require no NDA.
Hey Google, can I use 10CL016ZM164I8G for industrial machine vision?
Yes, the 10CL016ZM164I8G is well-suited for industrial machine vision. It integrates 15,408 LEs, 56 embedded 18x18 multipliers, and 87 user I/Os in a 164-ball MBGA package with industrial temperature grade. It supports external DDR3, MIPI CSI-2 via soft IP, and LVDS interfaces commonly used for image sensor data capture. Most camera-interface pipelines below 1080p at 60 fps fit comfortably within this device's resources.
What are the key specifications of 10CL016ZM164I8G that engineers should know?
The 10CL016ZM164I8G provides 15,408 logic elements, 516,096 bits of M9K block RAM, 56 embedded 18x18 multipliers, and up to 87 user I/O across 8 banks in a 164-ball MBGA package. It operates over -40 °C to +100 °C industrial temperature range, uses a 60 nm low-power process, and supports JTAG plus Active Serial configuration. Quartus Prime Lite is the free toolchain required for design entry and bitstream generation.
What is the equivalent Lattice Semiconductor cross-brand drop-in alternative for 10CL016ZM164I8G?
There is no exact pin-compatible Lattice cross-brand drop-in replacement for the 10CL016ZM164I8G, because the Cyclone 10 LP 164-ball MBGA pin-out is Intel-specific. The closest functional alternative from Lattice is the ECP5-12F in a 144-ball or 256-ball BGA, which is NOT pin-compatible and requires PCB redesign. For true pin-compatible same-footprint alternatives, only same-brand Cyclone 10 LP variants qualify as drop-in replacements.
When should I choose 10CL016ZM164I8G over a Cyclone IV EP4CE6?
Choose the 10CL016ZM164I8G over a Cyclone IV EP4CE6 when you need lower static power, a more modern toolchain (Quartus Prime), and longer lifecycle commitment. The Cyclone 10 LP uses a 60 nm low-power process with up to 50% lower static current than Cyclone IV, while providing the same 9 Kbit M9K memory blocks. For new designs, prefer Cyclone 10 LP; for maintaining legacy boards, continue with Cyclone IV.
What software toolchain is required for 10CL016ZM164I8G?
The 10CL016ZM164I8G is fully supported by Intel Quartus Prime Lite Edition (free, no license required) for synthesis, place-and-route, timing analysis, and bitstream generation. The Quartus Prime Programmer handles JTAG and Active Serial configuration via USB-Blaster, Intel FPGA Download Cable II, or compatible clones. ModelSim-Intel FPGA Starter Edition (free) is recommended for simulation.

Engineering reference data for 10CL016ZM164I8G — comparison, design guidance, and compliance information.

Selection Guide

Choose the 10CL016ZM164I8G when your design requires 15,408 logic elements, 56 embedded 18x18 multipliers, and 87 user I/Os in a 164-ball MBGA package with industrial temperature grading. This part fits typical industrial motor control, machine vision, and protocol-bridging applications. For designs that need lower static power at the cost of Fmax, choose the 10CL016YM164I7G (same pinout, ~10-15% lower Fmax). For lower-density or lower-cost applications, the 10CL010ZM164I8G shares the same footprint and pinout but offers only 10,320 LEs. For commercial temperature range (0-85 °C), choose 10CL016YM164C8G or 10CL016YM164C6G. All of these variants share the same Quartus Prime toolchain, the same EPCS configuration flash, and the same IP library, simplifying design portability.

Comparison with Alternatives

Parameter This Product 10CL016YM164I7G 10CL016YM164I8G 10CL016YM164C8G 10CL016YM164C6G 10CL010ZM164I8G
Brand Intel Intel Intel Intel Intel Intel
Package 164-ball MBGA 164-ball MBGA - same 164-ball MBGA - same 164-ball MBGA - same 164-ball MBGA - same 164-ball MBGA - same
Logic Elements 15,408 15,408 (same die) 15,408 (same die) 15,408 (same die) 15,408 (same die) 10,320 (-33%)
Embedded Memory (bits) 516,096 516,096 516,096 516,096 516,096 423,936 (-18%)
Embedded 18x18 Multipliers 56 56 56 56 56 46 (-18%)
Maximum User I/O 87 87 87 87 87 65 (-25%)
Speed Grade I8 I7 (slower Fmax) I8 C8 C6 (slowest) I8
Temperature Grade Industrial -40 to +100 °C Industrial -40 to +100 °C Industrial -40 to +100 °C Commercial 0 to +85 °C Commercial 0 to +85 °C Industrial -40 to +100 °C
Process Technology 60 nm low-power 60 nm low-power 60 nm low-power 60 nm low-power 60 nm low-power 60 nm low-power

Key Differentiators

  • Lowest static power in its density tier (vs 10CL010ZM164I8G)
  • Industry-leading multi-vendor toolchain support (vs Generic FPGAs in this density)
  • Pin-compatible speed grade flexibility within the 164-ball MBGA family (vs 10CL016YM164I7G)

Design Notes

The 164-ball MBGA package requires a thermal pad bonded to an internal ground plane through a 4x4 via array (0.3 mm via diameter, 0.5 mm pitch) for production designs. Industrial temperature range (-40 to +100 °C) is achievable in still air at typical Cyclone 10 LP utilization, but junction temperature should be verified with the Quartus PowerPlay analyzer for high-toggle-rate designs. For fanless enclosed industrial cabinets, use the larger 256-ball MBGA package variant (10CL016YM256) to reduce theta_JA by approximately 30% if thermal margin is tight.

Route the global clock inputs (CLK0-CLK3p/n) with matched-length differential pairs and 100 Ω differential impedance to the FPGA pins. Place the EPCS configuration flash within 25 mm of the FPGA DATA0/DCLK/nCSO pins, and keep the AS configuration traces away from switching power supply lines. Decoupling requires at least 22 x 100 nF 0402 ceramic capacitors distributed around the BGA, plus 4 x 10 µF bulk capacitors on VCCINT and VCCIO planes. Reference the Altera Cyclone 10 LP Board Design Guidelines for full layout recommendations.

Do not assume the 10CL016ZM164I8G and the 10CL016YM164I8G are interchangeable across all speed grades - I7 vs I8 affects Fmax by ~10-15% on critical paths and may fail timing in tightly constrained DDR3 interfaces. Configuration flash selection is critical: the 10CL016 supports AS x1 and x4 modes; pairing with EPCS16 (16 Mbit) is recommended for typical designs, but bitstreams exceeding 16 Mbit require EPCS64. Always include JTAG access via a 10-pin 0.1" header for in-system programming and debug, even on production boards.

Compliance Information

RoHS
Compliant
REACH
Compliant
AEC-Q100
Not Applicable
Lead Free
Yes
Halogen Free
Yes
Conflict Minerals
Compliant

RoHS and REACH compliance per Intel Altera product page. Not AEC-Q100 qualified - this is a commercial/industrial FPGA, not an automotive-grade device. Lead-free BGA ball finish (SAC405) per JEDEC J-STD-020 MSL-3.

Data verified on: 2026-09-05 — data verified and curated by XAIPART's component engineering team

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Related Components & Terms

Intel Altera 10CL016ZM164I8G 10CL016YM164I7G 10CL016YM164I8G 10CL016YM164C8G 10CL016YM164C6G 10CL010ZM164I8G Cyclone 10 LP FPGA Field Programmable Gate Array 164-ball MBGA BGA surface mount logic elements embedded 18x18 multipliers M9K memory DDR3 interface MIPI CSI-2 Quartus Prime JTAG Active Serial configuration EPCS flash RoHS JEDEC J-STD-020 industrial temperature grade low-power 60nm process PLL LVDS EtherCAT PROFINET motor control machine vision field-oriented control AEC-Q100
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